Xie Jianjun, Allen Krystal H, Marguet Amelia, Berghorn Kathie A, Bliss Stuart P, Navratil Amy M, Guan Jun Lin, Roberson Mark S
Department of Biomedical Sciences, Cornell University, Ithaca, New York 14853, USA.
Mol Endocrinol. 2008 Oct;22(10):2322-35. doi: 10.1210/me.2008-0061. Epub 2008 Jul 17.
Calcium influx through L-type voltage-gated calcium channels (VGCC) is required for ERK activation induced by GnRH in pituitary gonadotropes. The current studies investigate VGCC-sensitive catalytic activities that may lie upstream of ERKs within the GnRH signaling network. Ion exchange fractionation of alphaT3-1 cell lysates subjected to anti-phosphotyrosine Western blot analysis revealed a nifedipine-sensitive activity that colocalized with proline-rich tyrosine kinase (Pyk) 2 immunoreactivity. Phosphorylated Pyk2 was present in alphaT3-1 cells after GnRH agonist administration for a time course that lasted up to 4 h. Pyk2 phosphorylation was also evident in gonadotropes in vivo after administration of a bolus of GnRH. Knockdown of Pyk2 using specific small interfering RNAs revealed that Pyk2 contributed to modulation of GnRH-induced ERK but not c-Jun N-terminal kinase activation. Using pharmacological approaches, calmodulin (Cam) was also demonstrated to be required for the phosphorylation of Pyk2. Pyk2 was shown to bind specifically to a Cam agarose affinity column in a calcium-dependent manner, suggesting Cam and Pyk2 are capable of forming a complex. Specific mutation of a putative Cam binding motif within the catalytic domain of Pyk2 blocked association with Cam and uncoupled Pyk2's ability to activate ERK-dependent gene transcription. Thus, GnRH induces Pyk2 tyrosine phosphorylation dependent upon calcium flux within gonadotropes. Furthermore, association of Pyk2 and Cam may be required to mediate the effects of calcium on Pyk2 phosphorylation and subsequent activation of ERKs by GnRH.
垂体促性腺细胞中,GnRH诱导的ERK激活需要通过L型电压门控钙通道(VGCC)的钙内流。当前研究调查了可能位于GnRH信号网络中ERK上游的VGCC敏感催化活性。对αT3-1细胞裂解物进行离子交换分级分离,并进行抗磷酸酪氨酸蛋白质免疫印迹分析,结果显示一种硝苯地平敏感活性,该活性与富含脯氨酸的酪氨酸激酶(Pyk)2免疫反应性共定位。给予GnRH激动剂后,磷酸化的Pyk2在αT3-1细胞中持续存在长达4小时。静脉注射GnRH后,体内促性腺细胞中Pyk2磷酸化也很明显。使用特异性小干扰RNA敲低Pyk2表明,Pyk2有助于调节GnRH诱导的ERK激活,但不影响c-Jun氨基末端激酶的激活。使用药理学方法还证明,钙调蛋白(Cam)是Pyk2磷酸化所必需的。结果显示,Pyk2以钙依赖的方式特异性结合到Cam琼脂糖亲和柱上,表明Cam和Pyk2能够形成复合物。Pyk2催化结构域内假定的Cam结合基序的特异性突变阻断了与Cam的结合,并解除了Pyk2激活ERK依赖性基因转录的能力。因此,GnRH诱导促性腺细胞内依赖于钙通量的Pyk2酪氨酸磷酸化。此外,Pyk2与Cam的结合可能是介导钙对Pyk2磷酸化以及随后GnRH激活ERK作用所必需的。